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首页> 外文期刊>Nanotechnologies in Russia >The Influence of Nanosized Particles Introduced into Molten-Pool Tail on the Impact Toughness of Weld Metal
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The Influence of Nanosized Particles Introduced into Molten-Pool Tail on the Impact Toughness of Weld Metal

机译:纳米粒子颗粒在熔池尾部引入熔融池尾部焊接金属冲击韧性

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Abstract This article discusses the possibility of introducing nanosized particles into a molten pool using a flux-cored wire. A flux-cored wire has been proposed with added composite granules obtained upon the combined treatment of nickel powder and nanosized particles. In order to avoid the overheating of particles, it has been proposed to add a flux-cored wire to a molten-pool tail using preheating. The following hardmelting particles have been tested: tungsten carbide (WC), titanium nitride (TiN), and aluminum oxide (Al~(2)O~(3)). It has been demonstrated that the addition of tungsten carbide to a molten pool improves the stability of weld-metal (WM) impact toughness while retaining its average value and the addition of aluminum oxide to a molten pool leads to increased average values of WM impact toughness while retaining its stability. Meanwhile, nanosized particles of titanium nitride in a molten pool are prone to dissociation, which leads to the formation of porosity, thus limiting the field of application of this modifier.
机译:摘要本文讨论了使用磁通芯线将纳米粒子颗粒引入熔池中的可能性。已经提出了一种磁通芯线,并在镍粉末和纳米粒子颗粒的组合处理时得到的添加复合颗粒。为了避免颗粒过热,已经提出了使用预热将磁共管芯添加到熔池尾部。已经测试了以下硬熔凝颗粒:碳化钨(WC),氮化钛(锡)和氧化铝(Al〜(2)O〜(3))。已经证明,将碳化钨添加到熔池中,提高了焊接金属(WM)冲击韧性的稳定性,同时保持其平均值并向熔池添加氧化铝导致WM冲击韧性的平均值增加虽然保持其稳定性。同时,熔池中氮化钛的纳米化颗粒易于解离,这导致孔隙率的形成,从而限制了该改性剂的应用领域。

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